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首页> 外文期刊>International journal of ad hoc and ubiquitous computing >Quasi-optimal scheduling algorithm for area coverage in multi-functional sensor networks
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Quasi-optimal scheduling algorithm for area coverage in multi-functional sensor networks

机译:多功能传感器网络区域覆盖的准最优调度算法

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摘要

Wireless Sensor Networks (WSNs) are widely used to perform measurement and monitoring tasks in large sensing fields. Several applications require every point in the monitored area to be covered by at least k sensors (k-coverage problem) for measurement accuracy or robustness. In heterogeneous multi-functional sensor networks, p parallel observation tasks are performed with p types of sensors, each task having its own k_i(i = 1,2,... ,p) coverage requirement, assuming that multi-functional sensors are used which may have multiple measurement capabilities (multi-k-coverage problem). In order to prolong the lifetime of the network, active and sleeping states of sensors can be altered while maintaining the required coverage for all sensing tasks. In this paper an efficient distributed sensor state scheduling algorithm for multi-functional WSNs is proposed to solve the multi-k-coverage problem. The proposed multi-functional controlled greedy sleep algorithm is the generalisation of a recently proposed quasi-optimal scheduling algorithm. It is easy to implement and solves the common scheduling problem of heterogeneous multi-functional sensor networks. It has low local communication overhead and can adapt to dynamic changes in the network, while the required network-wide coverage for all sensing tasks is guaranteed as long as it is physically possible. The performance and the fault tolerance of the algorithm are illustrated by simulation examples.
机译:无线传感器网络(WSN)被广泛用于在大型传感领域中执行测量和监视任务。几种应用程序要求监视区域中的每个点至少要有k个传感器覆盖(k覆盖问题),以确保测量的准确性或鲁棒性。在异构多功能传感器网络中,使用p种类型的传感器执行p个并行观察任务,假设使用多功能传感器,每个任务都有其自己的k_i(i = 1,2,...,p)覆盖范围要求可能具有多种测量功能(多重k覆盖问题)。为了延长网络的寿命,可以更改传感器的活动和睡眠状态,同时保持所有传感任务所需的覆盖范围。为了解决多k覆盖问题,提出了一种高效的多功能无线传感器网络分布式传感器状态调度算法。提出的多功能受控贪婪睡眠算法是最近提出的准最优调度算法的推广。它易于实现并解决了异构多功能传感器网络的常见调度问题。它具有较低的本地通信开销,并且可以适应网络中的动态变化,同时只要物理上可行,就可以保证所有传感任务所需的网络范围覆盖。仿真实例说明了算法的性能和容错能力。

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